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Evaluation of a novel method for measurement of intracellular calcium ion concentration in fission yeast

机译:评价裂变酵母细胞内钙离子浓度的新方法

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The distribution of metal and metalloid species in each of the cell compartments is termed as "metallome". It is important to elucidate the molecular mechanism underlying the beneficial or toxic effects exerted by a given metal or metalloid on human health. Therefore, we developed a method to measure intracellular metal ion concentration (particularly, intracellular calcium ion) in fission yeast. We evaluated the effects of nitric acid (HNO3), zymolyase, and westase treatment on cytolysis in fission yeast. Moreover, we evaluated the changes in the intracellular calcium ion concentration in fission yeast in response to treatment with/without micafungin. The fission yeast undergoes lysis when treated with 60% HNO3, which is simpler and cheaper compared to the other treatments. Additionally, the intracellular calcium ion concentration in 60% HNO3-treated fission yeast was determined by inductively coupled plasma atomic emission spectrometry. This study yields significant information pertaining to measurement of the intracellular calcium ion concentration in fission yeast, which is useful for elucidating the physiological or pathological functions of calcium ion in the biological systems. This study is the first step to obtain perspective view on the effect of the metallome in biological systems.
机译:每个细胞室中的金属和金属化物质的分布被称为“金属聚集体”。重要的是要阐明由给定金属或金属体施加的有益或毒性效应的分子机制对人体健康施加。因此,我们开发了一种测量裂变酵母中细胞内金属离子浓度(特别是细胞内钙离子)的方法。我们评估了硝酸(HNO3),ZyMoLyase和Westase治疗对裂变酵母细胞分解的影响。此外,我们评估了裂变酵母细胞内钙离子浓度的变化,响应于/不含Micafungin治疗。裂变酵母在用60%HNO 3处理时经过裂解,与其他处理相比更简单,更便宜。另外,通过电感耦合等离子体原子发射光谱法测定60%HNO3处理的裂变酵母中的细胞内钙离子浓度。该研究产生了与裂变酵母细胞内钙离子浓度的测量有关的重要信息,这对于阐明生物系统中钙离子的生理或病理功能是有用的。本研究是第一步获得对生物系统中金属体的影响的透视图。

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